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Journal of Magnetism and Magnetic Materials

📅 Published: September 1, 2022 👤 Harutyun Gyulasaryan, L. A. Avakyan, A. V. Emelyanov et al. 📖 Zenodo (CERN European Organization for Nuclear Research) 📊 955 citations
AI-Generated Summary

Carbon encapsulated iron-cementite Fe–Fe3C nanoparticles with ‘‘core–shell’’ architecture, were synthesized by a single-step solid-state pyrolysis of iron phthalocyanine at the temperature 900 ◦C with pyrolysis time of 180 min. The structure, composition, and morphology of Fe–Fe3C nanoparticles in the carbon matrix were analyzed by X-ray based techniques combined with Reactive Force-Field Molecular Dynamics simulations, Mössbauer spectroscopy to outline the ‘‘core–shell’’ architecture.

⚡ This is an original paraphrased summary — not copied from the abstract. Full paper available at the source link below.

Key Findings
  • 1 The morphology and size distribution of the fabricated nanocomposites have been investigated using high resolution transmission and scanning transmission electron microscopies which revealed Fe–Fe3C nanoparticles with an average diameter of about 7.5 nm embedded in a carbon matrix.
  • 2 The structure, composition, and morphology of Fe–Fe3C nanoparticles in the carbon matrix were analyzed by X-ray based techniques combined with Reactive Force-Field Molecular Dynamics simulations, Mössbauer spectroscopy to outline the ‘‘core–shell’’ architecture.
  • 3 Such evidence is further supported by the magnetic features of hysteresis loops at 10 and 300 K as well as the magnetization of Fe–Fe3C nanoparticles is properly approximated with magnetic contributions of Fe and Fe3C bulk counterparts.
Why It Matters

This work deepens our understanding of the fundamental laws governing the universe, from subatomic particles to cosmic structures.

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Article Details
Source OpenAlex
Category ⚛️ Physics & Space Science
Published Sep 1, 2022
Journal Zenodo (CERN European Organization for Nuclear Research)
DOI 10.5281/zenodo.7913835
Citations 955
Authors Harutyun Gyulasaryan, L. A. Avakyan, A. V. Emelyanov, N. Sisakyan, S. Kubrin